Stok Jeanette E, Yamada Sean, Farlow Anthony J, Slessor Kate E, De Voss James J
Department of Chemistry, School of Chemistry and Molecular Biosciences, University of Queensland, St. Lucia, Brisbane QLD 4072, Australia.
Biochim Biophys Acta. 2013 Mar;1834(3):688-96. doi: 10.1016/j.bbapap.2012.12.022. Epub 2013 Jan 7.
P450(cin) (CYP176A) is a rare bacterial P450 in that contains an asparagine (Asn242) instead of the conserved threonine that almost all other P450s possess that directs oxygen activation by the heme prosthetic group. However, P450(cin) does have the neighbouring, conserved acid (Asp241) that is thought to be involved indirectly in the protonation of the dioxygen and affect the lifetime of the ferric-peroxo species produced during oxygen activation. In this study, the P450(cin) D241N mutant has been produced and found to be analogous to the P450(cam) D251N mutant. P450(cin) catalyses the hydroxylation of cineole to give only (1R)-6β-hydroxycineole and is well coupled (NADPH consumed: product produced). The P450(cin) D241N mutant also hydroxylated cineole to produce only (1R)-6β-hydroxycineole, was moderately well coupled (31±3%) but a significant reduction in the rate of the reaction (2% as compared to wild type) was observed. Catalytic oxidation of a variety of substrates by D241N P450(cin) were used to examine if typical reactions ascribed to the ferric-peroxo species increased as this intermediate is known to be more persistent in the P450(cam) D251N mutant. However, little change was observed in the product profiles of each of these substrates between wild type and mutant enzymes and no products consistent with chemistry of the ferric-peroxo species were observed to increase.
P450(cin)(CYP176A)是一种罕见的细菌细胞色素P450,它含有天冬酰胺(Asn242),而不是几乎所有其他细胞色素P450所具有的保守苏氨酸,该保守苏氨酸可通过血红素辅基引导氧活化。然而,P450(cin)确实有相邻的保守酸性氨基酸(Asp241),据认为它间接参与双氧的质子化,并影响氧活化过程中产生的铁-过氧物种的寿命。在本研究中,已构建了P450(cin) D241N突变体,发现它与P450(cam) D251N突变体类似。P450(cin)催化桉叶油素的羟基化反应,只生成(1R)-6β-羟基桉叶油素,并且耦合良好(消耗的NADPH:生成的产物)。P450(cin) D241N突变体也能将桉叶油素羟基化,只生成(1R)-6β-羟基桉叶油素,耦合程度中等(31±3%),但观察到反应速率显著降低(与野生型相比为2%)。利用D241N P450(cin)对多种底物的催化氧化反应来研究,由于已知这种中间体在P450(cam) D251N突变体中更持久,那么归因于铁-过氧物种的典型反应是否会增加。然而,野生型和突变型酶之间这些底物的产物谱几乎没有变化,也没有观察到与铁-过氧物种化学性质一致的产物增加。